Kurata S, Nagatani T
Division of Thermal Science, Department of Mechanical Engineering, Shizuoka University, Hamamatsu 432-8561, Japan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Jul;64(1 Pt 2):016106. doi: 10.1103/PhysRevE.64.016106. Epub 2001 Jun 13.
We study the traffic behavior of vehicles moving in groups analytically and numerically. A car-following model of traffic is extended to take into account a binary mixture of vehicles. It is shown that the movement in groups stabilizes the traffic flow. The jamming transition among the free traffic, the inhomogeneous traffic, and the homogeneous congested traffic occurs at a higher density than the threshold of the original model. The traffic current is highly enhanced at a high-density region by keeping a short headway without jam. The jamming transition is analyzed by using the linear stability method. It is found that the theoretical neutral stability curve agrees with the transition line obtained by the simulation.
我们通过分析和数值方法研究成群移动车辆的交通行为。一种交通跟驰模型被扩展以考虑车辆的二元混合。结果表明,成群移动使交通流趋于稳定。自由交通、非均匀交通和均匀拥堵交通之间的拥堵转变发生发生发生发生密度高于原模型的阈值。通过保持较短的车头间距且不发生拥堵,交通流量在高密度区域得到显著提高。利用线性稳定性方法对拥堵转变进行了分析。发现理论上的中性稳定性曲线与模拟得到的转变线相符。